Cargando…

Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways

Titanium alloy has been widely used in orthopedic surgeries as bone defect filling. However, the regeneration of high-quality new bones is limited due to the pro-inflammatory microenvironment around implants, resulting in a high occurrence rate of implant loosening or failure in osteological therapy...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Yaping, Feng, Zujian, Liu, Xiang, Yang, Chunfang, Gao, Rui, Liu, Wenshuai, Ou-Yang, Wenbin, Dong, Anjie, Zhang, Chuangnian, Huang, Pingsheng, Wang, Weiwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9160882/
https://www.ncbi.nlm.nih.gov/pubmed/35668921
http://dx.doi.org/10.1093/rb/rbac003
_version_ 1784719365560598528
author Wang, Yaping
Feng, Zujian
Liu, Xiang
Yang, Chunfang
Gao, Rui
Liu, Wenshuai
Ou-Yang, Wenbin
Dong, Anjie
Zhang, Chuangnian
Huang, Pingsheng
Wang, Weiwei
author_facet Wang, Yaping
Feng, Zujian
Liu, Xiang
Yang, Chunfang
Gao, Rui
Liu, Wenshuai
Ou-Yang, Wenbin
Dong, Anjie
Zhang, Chuangnian
Huang, Pingsheng
Wang, Weiwei
author_sort Wang, Yaping
collection PubMed
description Titanium alloy has been widely used in orthopedic surgeries as bone defect filling. However, the regeneration of high-quality new bones is limited due to the pro-inflammatory microenvironment around implants, resulting in a high occurrence rate of implant loosening or failure in osteological therapy. In this study, extracellular matrix-mimetic polysaccharide hydrogel co-delivering BMP-2 and interleukin (IL)-4 was composited with 3D printed titanium alloy to promote the osseointegration and regulate macrophage response to create a pro-healing microenvironment in bone defect. Notably, it is discovered from the bioinformatics data that IL-4 and BMP-2 could affect each other through multiple signal pathways to achieve a synergistic effect toward osteogenesis. The composite scaffold significantly promoted the osteoblast differentiation and proliferation of human bone marrow mesenchyme stem cells (hBMSCs). The repair of large-scale femur defect in rat indicated that the dual-cytokine-delivered composite scaffold could manipulate a lower inflammatory level in situ by polarizing macrophages to M2 phenotype, resulting in superior efficacy of mature new bone regeneration over the treatment of native titanium alloy or that with an individual cytokine. Collectively, this work highlights the importance of M2-type macrophages-enriched immune-environment in bone healing. The biomimetic hydrogel–metal implant composite is a versatile and advanced scaffold for accelerating in vivo bone regeneration, holding great promise in treating orthopedic diseases.
format Online
Article
Text
id pubmed-9160882
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-91608822022-06-05 Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways Wang, Yaping Feng, Zujian Liu, Xiang Yang, Chunfang Gao, Rui Liu, Wenshuai Ou-Yang, Wenbin Dong, Anjie Zhang, Chuangnian Huang, Pingsheng Wang, Weiwei Regen Biomater Research Article Titanium alloy has been widely used in orthopedic surgeries as bone defect filling. However, the regeneration of high-quality new bones is limited due to the pro-inflammatory microenvironment around implants, resulting in a high occurrence rate of implant loosening or failure in osteological therapy. In this study, extracellular matrix-mimetic polysaccharide hydrogel co-delivering BMP-2 and interleukin (IL)-4 was composited with 3D printed titanium alloy to promote the osseointegration and regulate macrophage response to create a pro-healing microenvironment in bone defect. Notably, it is discovered from the bioinformatics data that IL-4 and BMP-2 could affect each other through multiple signal pathways to achieve a synergistic effect toward osteogenesis. The composite scaffold significantly promoted the osteoblast differentiation and proliferation of human bone marrow mesenchyme stem cells (hBMSCs). The repair of large-scale femur defect in rat indicated that the dual-cytokine-delivered composite scaffold could manipulate a lower inflammatory level in situ by polarizing macrophages to M2 phenotype, resulting in superior efficacy of mature new bone regeneration over the treatment of native titanium alloy or that with an individual cytokine. Collectively, this work highlights the importance of M2-type macrophages-enriched immune-environment in bone healing. The biomimetic hydrogel–metal implant composite is a versatile and advanced scaffold for accelerating in vivo bone regeneration, holding great promise in treating orthopedic diseases. Oxford University Press 2022-01-12 /pmc/articles/PMC9160882/ /pubmed/35668921 http://dx.doi.org/10.1093/rb/rbac003 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Yaping
Feng, Zujian
Liu, Xiang
Yang, Chunfang
Gao, Rui
Liu, Wenshuai
Ou-Yang, Wenbin
Dong, Anjie
Zhang, Chuangnian
Huang, Pingsheng
Wang, Weiwei
Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways
title Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways
title_full Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways
title_fullStr Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways
title_full_unstemmed Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways
title_short Titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways
title_sort titanium alloy composited with dual-cytokine releasing polysaccharide hydrogel to enhance osseointegration via osteogenic and macrophage polarization signaling pathways
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9160882/
https://www.ncbi.nlm.nih.gov/pubmed/35668921
http://dx.doi.org/10.1093/rb/rbac003
work_keys_str_mv AT wangyaping titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT fengzujian titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT liuxiang titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT yangchunfang titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT gaorui titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT liuwenshuai titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT ouyangwenbin titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT donganjie titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT zhangchuangnian titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT huangpingsheng titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways
AT wangweiwei titaniumalloycompositedwithdualcytokinereleasingpolysaccharidehydrogeltoenhanceosseointegrationviaosteogenicandmacrophagepolarizationsignalingpathways